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Impact of light and alarm pheromone on immediate early gene expression in the European honeybee, Apis mellifera

机译:光报警信息素对欧洲蜜蜂,APIS Mellifera立即早期基因表达的影响

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摘要

Immediate early genes (IEGs) are a group of rapidly and transiently expressed genes that are induced by cellular stimulation, such as neuronal activation, and do not rely on de novo protein synthesis. Based on these characteristics, IEGs are used as markers for localizing neuronal activation in vertebrate brains. However, whether their orthologs in insects are functioning in a similar way is still an open question. We report findings on the expression profiles of two IEGs in honeybee workers, encoding the honeybee orthologs of the vertebrate transcription factors Egr and c-Jun, after exposure to light and alarm pheromone. While Amjra, the c-jun ortholog, becomes upregulated in various brain parts following stimulation with either stimulus, the expression of the X1 isoform of Amegr, the egr ortholog, is not affected. These findings suggest different roles and molecular pathways for both IEGs within the neuronal network of the honeybee and provide first data on an isoform-specific analysis of Amegr expression.
机译:立即早期基因(IEG)是一种迅速和瞬时表达的基因,其被细胞刺激(例如神经元激活)诱导,并且不依赖于Novo蛋白质合成。基于这些特征,IEG用于定位脊椎动物脑中神经元激活的标记。然而,它们是否在昆虫中的原始性是以类似的方式运作的仍然是一个开放的问题。我们在蜜蜂工人中报告了两个IEG的表达概况,编码了脊椎动物转录因子EGR和C-Jun的蜜蜂直肠,接触光线和报警信息素后。虽然Amjra,C-Jun Ortholog,在用刺激刺激刺激后在各种脑部件中升高,X1同种型致尖端,EGR Ortholog的表达不受影响。这些发现表明,蜜蜂内部网络内的IGS的不同作用和分子途径,并提供了关于对静态表达的同种类特异性分析的第一数据。

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